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Rapid Measurements of Intensities for Safety Assessment of Advanced Imaging Sequences

机译:快速测量强度,以评估高级成像序列的安全性

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FDA requires that intensity and safety parameters are measured for all imaging schemes for clinical imaging. This is often cumbersome, since the scan sequence has to broken apart, measurements conducted for the individually emitted beams, and the final intensity levels calculated by combining the intensities from the individual beams. This paper suggests a fast measurement scheme using the multi-line sampling capability of modern scanners and research systems. The hydrophone is connected to one sampling channel in the research system, and the intensity is measured for all imaging lines in one emission sequence. This makes it possible to map out the pressure field and hence intensity level for all imaging lines in a single measurement. The approach has several advantages: the scanner does not have to be re-programmed and can use the scan sequence without modification. The measurements are orders of magnitude faster (minutes rather than hours) and the final intensity level calculation can be made generic and reused for any kind of scan sequence by just knowing the number of imaging lines and the pulse repetition time. The scheme has been implemented on the Acoustic Intensity Measurement System AIMS Ⅲ (Onda, Sunnyvale, California, USA). The research scanner SARUS is used for the experiments, where one of the channels is used for the hydrophone signal. A 3 MHz BK 8820e (BK Medical, Herlev, Denmark) convex array with 192 elements is used along with an Onda HFL-0400 hydrophone connected to a AH-2010 pre-amplifier (Onda Corporation, Sunnyvale, USA). A single emission sequence is employed for testing and calibrating the approach. The measurements using the AIMS Ⅲ and SARUS systems after calibration agree within a relative standard deviation of 0.24%. A duplex B-mode and flow sequence is also investigated. The complex intensity map is measured and the time averaged spatial peak intensity is found. A single point measurement takes 3.43 seconds and the whole sequence can be characterized on the acoustical axis in around 6 minutes.
机译:FDA要求针对临床成像的所有成像方案测量强度和安全参数。这通常很麻烦,因为扫描序列必须分开,所以为单独发射的光束进行测量,并且通过将来自各个光束的强度组合来计算的最终强度水平。本文建议使用现代扫描仪和研究系统的多线采样能力进行快速测量方案。水听器连接到研究系统中的一个采样通道,并以一种排放序列以所有成像线测量强度。这使得可以在单个测量中映射到所有成像线的压力场和因此强度水平。该方法具有几个优点:扫描仪不必重新编程并可以使用扫描序列而无需修改。测量值是更快的速度(分钟而不是小时),并且只需了解成像线的数量和脉冲重复时间即可为任何类型的扫描序列进行通用并重复使用最终的强度级别计算。该方案已在声学强度测量系统目标Ⅲ(Onda,Sunnyvale,California,USA)上实施。研究扫描仪Sarus用于实验,其中一个通道用于水听器信号。带有192个元件的3 MHz BK 8820E(BK Medical,Herlev,Denmark)凸阵与192个元件一起使用,连接到AH-2010预放大器(Onda Corporation,Sunnyvale,USA)连接ONDA HFL-0400 Hydrophone。采用单个发射序列进行测试和校准方法。校准后使用AIMSⅢ和SARUS系统的测量在相对标准偏差内同意0.24%。还研究了双工B模式和流量序列。测量复杂的强度图,找到时间平均空间峰强度。单点测量需要3.43秒,并且整个序列可以在6分钟内在声学轴上表征。

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